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111.
Human health risk assessment of explosives and heavy metals at a military gunnery range 总被引:1,自引:0,他引:1
In this research, a risk assessment was undertaken in order to develop the remediation and management strategy of a contaminated
gunnery site, where a nearby flood controlling reservoir is under construction. Six chemicals, including explosives and heavy
metals, posing potential risk to environmental and human health, were targeted in this study. A site-specific conceptual site
model was constructed, based on effective, reasonable exposure pathways, to avoid any overestimation of the risk. Also, conservative
default values were adapted to prevent underestimation of the risk when site-specific values were not available. The risks
posed by the six contaminants were calculated using the API’s Decision Support System for Exposure and Risk Assessment, with
several assumptions. In the crater-formed-area (Ac), the non-carcinogenic risks (i.e., HI values) of tri-nitro-toluene (TNT)
and Cd were slightly larger than 1, but for RDX (Royal Demolition Explosives) was over 50. The total non-carcinogenic risk
of the whole gunnery range was calculated to be 62.5, which was a significantly high value. The carcinogenicity of Cd was
estimated to be about 10−3, while that for Pb was about 5 × 10−4, which greatly exceeded the generally acceptable carcinogenic risk level of 10−4–10−6. It was concluded from the risk assessment that there is an immediate need for remediation of both carcinogens and non-carcinogens
before construction of the reservoir. However, for a more accurate risk assessment, further specific estimations of the changes
in environmental conditions due to the construction of the reservoir will be required; and more over, the effects of the pollutants
to the ecosystem will also need to be evaluated. 相似文献
112.
113.
Zhuo Guan Xiang-Yu Tang Jae E. Yang Yong Sik Ok Zhihong Xu Taku Nishimura Brian J. Reid 《Environmental geochemistry and health》2017,39(6):1221-1243
Excessive transport of fine sediment, and its associated pollutants, can cause detrimental impacts in aquatic environments. It is therefore important to perform accurate sediment source apportionment to identify hot spots of soil erosion. Various tracers have been adopted, often in combination, to identify sediment source type and its spatial origin; these include fallout radionuclides, geochemical tracers, mineral magnetic properties and bulk and compound-specific stable isotopes. In this review, the applicability of these techniques to particular settings and their advantages and limitations are reviewed. By synthesizing existing approaches, that make use of multiple tracers in combination with measured changes of channel geomorphological attributes, an integrated analysis of tracer profiles in deposited sediments in lakes and reservoirs can be made. Through a multi-scale approach for fine sediment tracking, temporal changes in soil erosion and sediment load can be reconstructed and the consequences of changing catchment practices evaluated. We recommend that long-term, as well as short-term, monitoring of riverine fine sediment and corresponding surface and subsurface sources at nested sites within a catchment are essential. Such monitoring will inform the development and validation of models for predicting dynamics of fine sediment transport as a function of hydro-climatic and geomorphological controls. We highlight that the need for monitoring is particularly important for hilly catchments with complex and changing land use. We recommend that research should be prioritized for sloping farmland-dominated catchments. 相似文献
114.
Poudel Jeeban Ohm Tae-In Gu Jae Hoi Shin Myung Chul Oh Sea Cheon 《Journal of Material Cycles and Waste Management》2017,19(2):917-927
Journal of Material Cycles and Waste Management - This paper describes the effect of torrefaction on the characteristics of empty fruit bunches (EFB) and palm kernel shell (PKS). The torrefaction... 相似文献
115.
Journal of Material Cycles and Waste Management - Recycling possibilities were evaluated for a composite waste composed of glass fiber reinforced polyester bound to a layer of crosslinked... 相似文献
116.
Choi Eunhwa Kim Seunghwan Mam Sarith Gautam Arjun Bhandari Ravi Kim Jae Young 《Journal of Material Cycles and Waste Management》2021,23(6):2307-2317
Journal of Material Cycles and Waste Management - Maize straw- and rice husk-derived biochars were produced in a simple metal kiln without automated control. Their characteristics and effects on... 相似文献
117.
118.
The main objective of this study is to develop an eco-friendly and a large recycling technique of flotation Tailings from korea (TK) from metal mines as construction materials such as admixtures for high-fluidity concrete (HFC). TK used in this study was obtained from the Korea Molybdenum Corporation in operation. TK was used as the alternative material to adjust flowability and viscosity of HFC in the form of powder agent which enables adjustment of concrete compressive strength. In this study, we have performed concrete rheological tests and concrete flowability tests to obtain the quality characteristics of TK for using as the admixture in producing HFC. The results indicated that the adequate mix ratio of cement to TK should be 8:2 (vol%). It is more effective to use the TK as admixture to control flowability, viscosity and strength of HFC than the normal concrete. It was found that TK could be recycled construction materials in bulk such as admixture for HFC, in terms of the economic and eco-friendly aspects. 相似文献
119.
Mehmet H. Sonmete Can Ertekin Hakan O. Menges Haydar Hac?sefero?ullari Fatih Evrendilek 《Environmental monitoring and assessment》2011,175(1-4):251-277
Solar radiation data are required by solar engineers, architects, agriculturists, and hydrologists for many applications such as solar heating, cooking, drying, and interior illumination of buildings. In order to achieve this, numerous empirical models have been developed all over the world to predict solar radiation. The main objective of this study is to examine and compare 147 solar radiation models available in the literature for the prediction of monthly solar radiation at Ankara (Turkey) based on selected statistical measures such as percentage error, mean percentage error, root mean square error, mean bias error, and correlation coefficient. Our results showed that Ball et al. (Agron J 96:391?C397, 2004) model and Chen et al. (Energy Convers Manag 47:2859?C2866, 2006) model performed best in the estimation of solar radiation on a horizontal surface for Ankara. 相似文献
120.
Chi-Ru Yang Tzu-Hsing Ko Yuan-Chung Lin Suen-Zone Lee Yih-Feng Chang Hsin-Ta Hsueh 《Environmental Chemistry Letters》2013,11(1):33-40
This is the first report showing reduction of particle matter and PAHs from incense burning by addition of oyster shell. Worshiping ancestors and gods by burning incense sticks and joss paper is a very important tradition in many Asian regions. More than 45 % of families in Taiwan burn incense twice a day. Unlike joss paper burning, most of the incense burning occurs indoors, thus creating a risk for human health. Previous reports have indeed evidenced toxicity of incense, notably due to particulate matter and polycyclic aromatic hydrocarbons (PAHs). However, there are few methods to reduce particle matter and PAHs from incense burning. We hypothesize that oyster shell may be used to reduce incense fumes toxicity. Indeed a large amount of unused oyster shell is discarded due to increasing seafood consumption. Here, two types of incense were made in the laboratory, and then 5–30 % of oyster shells were added to the incense to study the reduction of particle matter and PAHs. Results show that reduction of particle matter and PAH emission increased with oyster shell addition. The reduction of emission factors is ?35 % for mean particle matter, ?21 % for particle-phase PAHs, and ?37 % for benzo[a]pyrene equivalent concentration (BaPeq), using 30 % oyster shell additive. The addition of 10 % oyster shell reduces the burning time by 8.3 min, increases the burning rate by 3.4 mg/min, and reduces particle matter by 6.4 mg/g incense, particle-phase PAHs by 0.67 μg/g incense, and BaPeq by 0.23 μg/g incense. The reductions of particle matter, particle-phase PAHs, and BaPeq correspond to about 640 metric tons, 67, and 23 kg, respectively, per year. Our findings will help to produce safer and cleaner incense. 相似文献